References
7
Arico AS, Bruce P, Scrosati B, Tarascon J-M, Van Schalkwijk W (2005) Nanostructured materials
for advanced energy conversion and storage devices. Nat Mater 4(5):366
Armaroli N, Balzani V (2007) The future of energy supply: challenges and opportunities. Angew
Chem Int Ed 46(1–2):52–66
Asif M, Muneer T (2007) Energy supply, its demand and security issues for developed and emerging
economies. Renew Sustain Energy Rev 11(7):1388–1413
Barkalina N, Charalambous C, Jones C, Coward K (2014) Nanotechnology in reproductive
medicine: emerging applications of nanomaterials. Nanomed Nanotech Biol Med 10(5):e921–
e938
Biju V (2014) Chemical modifications and bioconjugate reactions of nanomaterials for sensing,
imaging, drug delivery and therapy. Chem Soc Rev 43(3):744–764
Boverhof DR, Bramante CM, Butala JH, Clancy SF, Lafranconi M, West J, Gordon SC (2015)
Comparative assessment of nanomaterial definitions and safety evaluation considerations. Regul
Toxicol Pharmacol 73(1):137–150
Bromberg L, Cohn D, Rabinovich A, Heywood J (2001) Emissions reductions using hydrogen from
plasmatron fuel converters. Int J Hydrogen Energy 26(10):1115–1121
Candelaria SL, Shao Y, Zhou W, Li X, Xiao J, Zhang J-G, Wang Y, Liu J, Li J, Cao G (2012)
Nanostructured carbon for energy storage and conversion. Nano Energy 1(2):195–220
Carrow JK, Gaharwar AK (2015) Bioinspired polymeric nanocomposites for regenerative medicine.
Macromol Chem Phys 216(3):248–264
Catherine L, Olivier P (2017) Gold nanoparticles for physics, chemistry and biology
Chen T, Dai L (2014) Flexible supercapacitors based on carbon nanomaterials. J Mater Chem A
2(28):10756–10775
Chen Z, Yuan Y, Zhou H, Wang X, Gan Z, Wang F, Lu Y (2014) 3D nanocomposite architectures from
carbon-nanotube-threaded nanocrystals for high-performance electrochemical energy storage.
Adv Mater 26(2):339–345
Choi B, Chang S, Lee Y, Bae J, Kim H, Huh Y (2012) 3D heterostructured architectures of Co3O4
nanoparticles deposited on porous graphene surfaces for high performance of lithium ion batteries.
Nanoscale 4(19):5924–5930
Choi SH, Ko YN, Lee JK, Kang YC (2015) 3D MoS 2 –graphene microspheres consisting of multiple
nanospheres with superior sodium ion storage properties. Adv Func Mater 25(12):1780–1788
Choi S, Lee H, Ghaffari R, Hyeon T, Kim DH (2016) Recent advances in flexible and stretchable
bio-electronic devices integrated with nanomaterials. Adv Mater 28(22):4203–4218
Commission E (2011) Commission Recommendation of 18 October 2011 on the definition of
nanomaterial. Official Journal of the European Communities: Legis
Cook TR, Dogutan DK, Reece SY, Surendranath Y, Teets TS, Nocera DG (2010) Solar energy
supply and storage for the legacy and nonlegacy worlds. Chem Rev 110(11):6474–6502
Dai L, Chang DW, Baek JB, Lu W (2012) Carbon nanomaterials for advanced energy conversion
and storage. Small 8(8):1130–1166
Devi RV, Doble M, Verma RS (2015) Nanomaterials for early detection of cancer biomarker with
special emphasis on gold nanoparticles in immunoassays/sensors. Biosens Bioelectron 68:688–
698
Dincer I (2000) Renewable energy and sustainable development: a crucial review. Renew Sustain
Energy Rev 4(2):157–175
Dutta A, Datta J (2014) Energy efficient role of Ni/NiO in PdNi nano catalyst used in alkaline
DEFC. J Mater Chem A 2(9):3237–3250
Fabiano A, Chetoni P, Zambito Y (2015) Mucoadhesive nano-sized supramolecular assemblies for
improved pre-corneal drug residence time. Drug Dev Ind Pharm 41(12):2069–2076
Feynman R (2018) There’s plenty of room at the bottom. In: Feynman and computation
Frewer L, Gupta N, George S, Fischer A, Giles E, Coles D (2014) Consumer attitudes towards
nanotechnologies applied to food production. Trends Food Sci Technol 40(2):211–225
Gai S, Yang G, Yang P, He F, Lin J, Jin D, Xing B (2018) Recent advances in functional nanomaterials
for light–triggered cancer therapy. Nano Today 19:146–187
7
Arico AS, Bruce P, Scrosati B, Tarascon J-M, Van Schalkwijk W (2005) Nanostructured materials
for advanced energy conversion and storage devices. Nat Mater 4(5):366
Armaroli N, Balzani V (2007) The future of energy supply: challenges and opportunities. Angew
Chem Int Ed 46(1–2):52–66
Asif M, Muneer T (2007) Energy supply, its demand and security issues for developed and emerging
economies. Renew Sustain Energy Rev 11(7):1388–1413
Barkalina N, Charalambous C, Jones C, Coward K (2014) Nanotechnology in reproductive
medicine: emerging applications of nanomaterials. Nanomed Nanotech Biol Med 10(5):e921–
e938
Biju V (2014) Chemical modifications and bioconjugate reactions of nanomaterials for sensing,
imaging, drug delivery and therapy. Chem Soc Rev 43(3):744–764
Boverhof DR, Bramante CM, Butala JH, Clancy SF, Lafranconi M, West J, Gordon SC (2015)
Comparative assessment of nanomaterial definitions and safety evaluation considerations. Regul
Toxicol Pharmacol 73(1):137–150
Bromberg L, Cohn D, Rabinovich A, Heywood J (2001) Emissions reductions using hydrogen from
plasmatron fuel converters. Int J Hydrogen Energy 26(10):1115–1121
Candelaria SL, Shao Y, Zhou W, Li X, Xiao J, Zhang J-G, Wang Y, Liu J, Li J, Cao G (2012)
Nanostructured carbon for energy storage and conversion. Nano Energy 1(2):195–220
Carrow JK, Gaharwar AK (2015) Bioinspired polymeric nanocomposites for regenerative medicine.
Macromol Chem Phys 216(3):248–264
Catherine L, Olivier P (2017) Gold nanoparticles for physics, chemistry and biology
Chen T, Dai L (2014) Flexible supercapacitors based on carbon nanomaterials. J Mater Chem A
2(28):10756–10775
Chen Z, Yuan Y, Zhou H, Wang X, Gan Z, Wang F, Lu Y (2014) 3D nanocomposite architectures from
carbon-nanotube-threaded nanocrystals for high-performance electrochemical energy storage.
Adv Mater 26(2):339–345
Choi B, Chang S, Lee Y, Bae J, Kim H, Huh Y (2012) 3D heterostructured architectures of Co3O4
nanoparticles deposited on porous graphene surfaces for high performance of lithium ion batteries.
Nanoscale 4(19):5924–5930
Choi SH, Ko YN, Lee JK, Kang YC (2015) 3D MoS 2 –graphene microspheres consisting of multiple
nanospheres with superior sodium ion storage properties. Adv Func Mater 25(12):1780–1788
Choi S, Lee H, Ghaffari R, Hyeon T, Kim DH (2016) Recent advances in flexible and stretchable
bio-electronic devices integrated with nanomaterials. Adv Mater 28(22):4203–4218
Commission E (2011) Commission Recommendation of 18 October 2011 on the definition of
nanomaterial. Official Journal of the European Communities: Legis
Cook TR, Dogutan DK, Reece SY, Surendranath Y, Teets TS, Nocera DG (2010) Solar energy
supply and storage for the legacy and nonlegacy worlds. Chem Rev 110(11):6474–6502
Dai L, Chang DW, Baek JB, Lu W (2012) Carbon nanomaterials for advanced energy conversion
and storage. Small 8(8):1130–1166
Devi RV, Doble M, Verma RS (2015) Nanomaterials for early detection of cancer biomarker with
special emphasis on gold nanoparticles in immunoassays/sensors. Biosens Bioelectron 68:688–
698
Dincer I (2000) Renewable energy and sustainable development: a crucial review. Renew Sustain
Energy Rev 4(2):157–175
Dutta A, Datta J (2014) Energy efficient role of Ni/NiO in PdNi nano catalyst used in alkaline
DEFC. J Mater Chem A 2(9):3237–3250
Fabiano A, Chetoni P, Zambito Y (2015) Mucoadhesive nano-sized supramolecular assemblies for
improved pre-corneal drug residence time. Drug Dev Ind Pharm 41(12):2069–2076
Feynman R (2018) There’s plenty of room at the bottom. In: Feynman and computation
Frewer L, Gupta N, George S, Fischer A, Giles E, Coles D (2014) Consumer attitudes towards
nanotechnologies applied to food production. Trends Food Sci Technol 40(2):211–225
Gai S, Yang G, Yang P, He F, Lin J, Jin D, Xing B (2018) Recent advances in functional nanomaterials
for light–triggered cancer therapy. Nano Today 19:146–187
